Changes for page Water Quality Sensors
Last modified by Karry Zhuang on 2025/07/25 09:38
From version 61.2
edited by Karry Zhuang
on 2025/07/15 15:50
on 2025/07/15 15:50
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... ... @@ -19,20 +19,20 @@ 19 19 * **EC Range & Resolution:** 20 20 ** **ECK0.01** : 0.02 ~~ 20 μS/cm 21 21 ** **ECK0.1**: 0.2 ~~ 200.0 μS/cm 22 -** **ECK1.0** : 0 ~~ 2,000 μS/cm Resolution: 1 μS/cm 23 -** **ECK10.0** : 10 ~~ 20,000 μS/cm Resolution: 10 μS/cm 24 -** **ECK200.0** : 1 ~~ 200,000 μS/cm Resolution: 1 μS/cm 22 +** **ECK1.0** : 2 ~~ 2,000 μS/cm Resolution: 1 μS/cm 23 +** **ECK10.0** : 20 ~~ 20,000 μS/cm Resolution: 10 μS/cm 25 25 26 26 * **EC Accuracy**: ±1% FS 26 + 27 +* **Temperature Measure Range**: -20 ~~ 60 °C 28 + 27 27 * **Temperature Accuracy: **±0.5 °C 28 -* **Working environment:** 29 -** Ambient Temperature: 0–60°C 30 -** Relative Humidity: <85% RH(Specifically refers to the cable male and female) 31 -** ECK200.0 Continuous monitoring of cross-section water quality, aquaculture, sewage treatment, environmental protection, pharmaceuticals, food, tap water, seawater and other high conductivity environments 30 + 32 32 * **IP Rated**: IP68 33 33 34 34 * **Max Pressure**: 0.6MPa 35 35 35 + 36 36 == 1.2 Application for Different Range == 37 37 38 38 ... ... @@ -42,17 +42,15 @@ 42 42 == 1.3 Wiring == 43 43 44 44 45 -[[image:image-2024 1129142314-1.png||height="352" width="1108"]]45 +[[image:image-20240720172533-1.png||height="347" width="569"]] 46 46 47 47 48 48 == 1.4 Mechinical Drawing == 49 49 50 - ECK1 and ECK10 ECK200 51 51 51 +[[image:image-20240714174241-2.png]] 52 52 53 -[[image:image-20240714174241-2.png]] [[image:1752564223905-283.png||height="399" width="160"]] 54 54 55 - 56 56 == 1.5 Installation == 57 57 58 58 ... ... @@ -102,6 +102,7 @@ 102 102 103 103 * The equipment should be calibrated before each use. It is recommended to calibrate it every 3 months for long-term use. The calibration frequency should be adjusted appropriately according to different application conditions (degree of dirt in the application, deposition of chemical substances, etc.). 104 104 103 + 105 105 == 1.7 RS485 Commands == 106 106 107 107 ... ... @@ -128,7 +128,6 @@ 128 128 |(% style="width:99px" %)0X01|(% style="width:112px" %)0X03|(% style="width:106px" %)0X00|(% style="width:93px" %)0X20|(% style="width:104px" %)0XF0 129 129 130 130 131 - 132 132 === 1.7.2 Change address === 133 133 134 134 ... ... @@ -166,6 +166,7 @@ 166 166 0X8F 167 167 ))) 168 168 167 + 169 169 === 1.7.4 Query data === 170 170 171 171 ... ... @@ -207,11 +207,8 @@ 207 207 **For example**, the returned data is 12 03 04 (% style="color:red" %)**02 AE**(%%) 01 64 B8 D0. 02 AE is converted to decimal 686, K=1, EC: 686uS/cm,temperature: 35.6℃ Convert the returned data to decimal and divide by 10. 208 208 209 209 210 -ECK200 211 - 212 212 === 1.7.5 Calibration Method === 213 213 214 -ECK1 and ECK10.0 215 215 216 216 This device uses one-point calibration, and you need to prepare a known E standard solution. When mileage K=1, 1~~2000 uses 1413μS/cm standard solution, and when mileage K=10, 10~~20000 uses 12.88mS/cm standard solution. 217 217 ... ... @@ -256,10 +256,6 @@ 256 256 |(% style="width:99px" %)0X11|(% style="width:112px" %)0X06|(% style="width:135px" %)0X00|(% style="width:126px" %)0X26|(% style="width:85px" %)0X00|(% style="width:1px" %)0X02|(% style="width:1px" %)0XEB|(% style="width:1px" %)0X50 257 257 258 258 259 - 260 -ECK200.0 261 - 262 - 263 263 = 2. DR-PH01 Water PH Sensor = 264 264 265 265 == 2.1 Specification == ... ... @@ -281,9 +281,7 @@ 281 281 282 282 * **Temperature measurement error**: ±0.5°C 283 283 284 -* **Working environment:** 285 -** Ambient Temperature: 0–60°C 286 -** Relative Humidity: <85% RH(Specifically refers to the cable male and female) 276 +* **Temperature Measure Range**: -20 ~~ 60 °C 287 287 288 288 * **Temperature Accuracy: **±0.5 °C 289 289 ... ... @@ -291,6 +291,7 @@ 291 291 292 292 * **Max Pressure**: 0.6MPa 293 293 284 + 294 294 == 2.2 Wiring == 295 295 296 296 ... ... @@ -352,6 +352,7 @@ 352 352 353 353 * The equipment should be calibrated before each use. For long-term use, it is recommended to calibrate once every 3 months. The calibration frequency should be adjusted appropriately according to different application conditions (degree of dirt in the application, deposition of chemical substances, etc.). After aging, the electrodes should be replaced in time. 354 354 346 + 355 355 == 2.6 RS485 Commands == 356 356 357 357 ... ... @@ -490,14 +490,13 @@ 490 490 491 491 * **Stability**: ≤2mv/24 hours 492 492 493 -* **Working environment:** 494 -** Ambient Temperature: 0–60°C 495 -** Relative Humidity: <85% RH(Specifically refers to the cable male and female) 485 +* **Equipment working conditions**: Ambient temperature: 0-60°C Relative humidity: <85%RH 496 496 497 497 * **IP Rated**: IP68 498 498 499 499 * **Max Pressure**: 0.6MPa 500 500 491 + 501 501 == 3.2 Wiring == 502 502 503 503 ... ... @@ -568,6 +568,7 @@ 568 568 |=(% style="width: 64.75px;background-color:#4F81BD;color:white" %)Original address|=(% style="width: 64.75px;background-color:#4F81BD;color:white" %)Function code|=(% style="width: 64.75px;background-color:#4F81BD;color:white" %)Address high|=(% style="width: 64.75px;background-color:#4F81BD;color:white" %)Address low|=(% style="width: 64.75px;background-color:#4F81BD;color:white" %)Quantity high|=(% style="width: 64.75px; background-color: rgb(79, 129, 189); color: white;" %)Quantity low|=(% style="width: 64.75px;background-color:#4F81BD;color:white" %)CRC16 low|=(% style="width: 64.75px;background-color:#4F81BD;color:white" %)CRC16 high 569 569 |(% style="width:99px" %)0XFE |(% style="width:112px" %)0X03|(% style="width:135px" %)0X00|(% style="width:126px" %)0X50|(% style="width:85px" %)0X00|(% style="width:1px" %)0X00|(% style="width:1px" %)0X51|(% style="width:1px" %)0XD4 570 570 562 + 571 571 **response:** 572 572 573 573 (% border="1" cellspacing="3" style="background-color:#f2f2f2; width:518px" %) ... ... @@ -574,6 +574,7 @@ 574 574 |=(% style="width: 103.6px;background-color:#4F81BD;color:white" %)New address|=(% style="width: 103.6px;background-color:#4F81BD;color:white" %)Function code|=(% style="width: 103.6px; background-color: rgb(79, 129, 189); color: white;" %)Data length|=(% style="width: 103.6px; background-color: rgb(79, 129, 189); color: white;" %)CRC16 low|=(% style="width: 103.6px; background-color: rgb(79, 129, 189); color: white;" %)CRC16 high 575 575 |(% style="width:99px" %)0X01|(% style="width:112px" %)0X03|(% style="width:106px" %)0X00|(% style="width:93px" %)0X20|(% style="width:104px" %)0XF0 576 576 569 + 577 577 === 3.6.2 Change address === 578 578 579 579 ... ... @@ -611,6 +611,7 @@ 611 611 0X96 612 612 ))) 613 613 607 + 614 614 === 3.6.4 Query data === 615 615 616 616 ... ... @@ -663,11 +663,11 @@ 663 663 == 4.1 Specification == 664 664 665 665 666 -* **Measuring range**: 0-20mg/L, 0 –50℃660 +* **Measuring range**: 0-20mg/L, 0-50°C 667 667 668 -* **Accuracy**: 3%, ±0.5 ℃662 +* **Accuracy**: 3%, ±0.5°C 669 669 670 -* **Resolution**: 0.01 mg/L, 0.01 ℃664 +* **Resolution**: 0.01 mg/L, 0.01°C 671 671 672 672 * **Maximum operating pressure**: 6 bar 673 673 ... ... @@ -675,9 +675,7 @@ 675 675 676 676 * **Power supply voltage**: 5-24V DC 677 677 678 -* **Working environment:** 679 -** Ambient Temperature: 0–60°C 680 -** Relative Humidity: <85% RH(Specifically refers to the cable male and female) 672 +* **Working environment**: temperature 0-60°C; humidity <95%RH 681 681 682 682 * **Power consumption**: ≤0.5W 683 683 ... ... @@ -690,10 +690,13 @@ 690 690 == 4.3 Impedance requirements for current signals == 691 691 692 692 693 -(% border="1" cellspacing="3" style="background-color:#f2f2f2; width:40 0px" %)694 -|(% style="width:1 32px" %)**Supply Voltage**|(% style="width:67px" %)**9V**|(% style="width:67px" %)**12V**|(% style="width:67px" %)**20V**|(% style="width:67px" %)**24V**695 -|(% style="width:13 2px" %)**Max Impedance**|(% style="width:65px" %)**<250Ω**|(% style="width:67px" %)**<400Ω**|(% style="width:67px" %)**<500Ω**|(% style="width:65px" %)**<900Ω**685 +(% border="1" cellspacing="3" style="background-color:#f2f2f2; width:420px" %) 686 +|=(% style="width: 140px" %)Supply Voltage|=(% style="width: 70px;" %)9V|=(% style="width: 70px;" %)**12V**|=(% style="width: 70px;" %)**20V**|=(% style="width: 70px;" %)**24V** 687 +|(% style="width:137px" %)**Max Impedance**|(% style="width:70px" %)**<250Ω**|(% style="width:68px" %)**<400Ω**|(% style="width:68px" %)**<500Ω**|(% style="width:70px" %)**<900Ω** 696 696 689 +[[image:image-20240718195414-8.png||height="100" width="575"]] 690 + 691 + 697 697 == 4.4 Mechinical Drawing == 698 698 699 699 ... ... @@ -707,6 +707,7 @@ 707 707 708 708 * If the water conditions are complex and you want accurate data, you need to wipe the sensor probe frequently. 709 709 705 + 710 710 == 4.6 RS485 Commands == 711 711 712 712 ... ... @@ -750,6 +750,7 @@ 750 750 |=(% style="width: 42px;background-color:#4F81BD;color:white" %)Address|=(% style="width: 68px; background-color: rgb(79, 129, 189); color: white;" %)Function code|=(% style="width: 68px; background-color: rgb(79, 129, 189); color: white;" %)Starting register address high|=(% style="width: 68px; background-color: rgb(79, 129, 189); color: white;" %)Starting register address low|=(% style="width: 68px; background-color: rgb(79, 129, 189); color: white;" %)Register length high|=(% style="width: 68px; background-color: rgb(79, 129, 189); color: white;" %)Register length low|=(% style="width: 68px; background-color: rgb(79, 129, 189); color: white;" %)CRC16 low|=(% style="width: 68px; background-color: rgb(79, 129, 189); color: white;" %)CRC16 high 751 751 |(% style="width:99px" %)0X01|(% style="width:72px" %)0X10|(% style="width:64px" %)0X00|(% style="width:68px" %)0X0A|(% style="width:70px" %)0X00|(% style="width:72px" %)0X02|(% style="width:56px" %)0X61|(% style="width:56px" %)0XCA 752 752 749 + 753 753 === 4.6.3 Query data === 754 754 755 755 ... ... @@ -792,7 +792,7 @@ 792 792 == 5.1 Specification == 793 793 794 794 795 -* **Measuring range**: 0.1 ~~1000.0NTU792 +* **Measuring range**: 0.11000.0NTU 796 796 797 797 * **Accuracy**: ±5% 798 798 ... ... @@ -800,13 +800,11 @@ 800 800 801 801 * **Stability**: ≤3mV/24 hours 802 802 803 -* **Output signal**: RS485 (standard Modbus-RTU protocol, device default address: 01) 800 +* **Output signal**: A: 420 mA (current loop)B: RS485 (standard Modbus-RTU protocol, device default address: 01) 804 804 805 -* **Power supply voltage**: 5 ~~24V DC (when output signal is RS485),12~~24V DC (when output signal is 4~~20mA)802 +* **Power supply voltage**: 524V DC (when output signal is RS485)1224V DC (when output signal is 420mA) 806 806 807 -* **Working environment:** 808 -** Ambient Temperature: 0–60°C 809 -** Relative Humidity: <85% RH(Specifically refers to the cable male and female) 804 +* **Working environment**: temperature 060°C; humidity ≤ 95%RH 810 810 811 811 * **Power consumption**: ≤ 0.5W 812 812 ... ... @@ -819,10 +819,11 @@ 819 819 == 5.3 Impedance requirements for current signals == 820 820 821 821 822 -(% border="1" cellspacing="3" style="background-color:#f2f2f2; width:40 0px" %)823 -|(% style="width:1 32px" %)**Supply Voltage**|(% style="width:67px" %)**9V**|(% style="width:67px" %)**12V**|(% style="width:67px" %)**20V**|(% style="width:67px" %)**24V**824 -|(% style="width:13 2px" %)**Max Impedance**|(% style="width:65px" %)**<250Ω**|(% style="width:67px" %)**<400Ω**|(% style="width:67px" %)**<500Ω**|(% style="width:65px" %)**<900Ω**817 +(% border="1" cellspacing="3" style="background-color:#f2f2f2; width:420px" %) 818 +|=(% style="width: 140px" %)Supply Voltage|=(% style="width: 70px;" %)9V|=(% style="width: 70px;" %)**12V**|=(% style="width: 70px;" %)**20V**|=(% style="width: 70px;" %)**24V** 819 +|(% style="width:137px" %)**Max Impedance**|(% style="width:70px" %)**<250Ω**|(% style="width:68px" %)**<400Ω**|(% style="width:68px" %)**<500Ω**|(% style="width:70px" %)**<900Ω** 825 825 821 + 826 826 == 5.4 Mechinical Drawing == 827 827 828 828 ... ... @@ -895,9 +895,3 @@ 895 895 For example, the returned data is 15 03 02 (% style="color:red" %)**02 9A**(%%) 09 4C 896 896 897 897 02 9A is the turbidity value, converted to decimal, it is 666, and then divided by 10, the actual value is 66.6, 02 9A means the current turbidity value is 66.6 NTU 898 - 899 - 900 -= 6. Water Quality Sensor Datasheet = 901 - 902 - 903 -* **[[Water Quality Sensor Transmitter Datasheet>>https://www.dropbox.com/scl/fi/9tofocmgapkbddshznumn/Datasheet_WQS-xB-WQS-xS_Water-Quality-Sensor-Transmitter.pdf?rlkey=wxua12ur9swk30rkqnh2boo9z&st=axga6epf&dl=0]]**
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